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Potassium Chloride, ACS

氯化钾

公司名称: VWR
产品编号: BDH9258
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Expression and Purification of the Cas10-Csm Complex from Staphylococci
Author:
Date:
2017-06-05
[Abstract]  CRISPR-Cas (Clustered regularly interspaced short palindromic repeats-CRISPR-associated proteins) is a class of prokaryotic immune systems that degrade foreign nucleic acids in a sequence-specific manner. These systems rely upon ribonucleoprotein complexes composed of Cas nucleases and small CRISPR RNAs (crRNAs). Staphylococcus epidermidis and Staphylococcus aureus are bacterial residents on human skin that are also leading causes of antibiotic resistant infections (Lowy, 1998; National Nosocomial Infections Surveillance, 2004; Otto, 2009). Many staphylococci possess Type ... [摘要]  CRISPR-Cas(聚集的定期间隔的短回文重复-CRISPR相关蛋白)是一类以序列特异性方式降解外来核酸的原核免疫系统。这些系统依赖于由Cas核酸酶和小型CRISPR RNA(crRNA)组成的核糖核蛋白复合物。表皮葡萄球菌和金黄色葡萄球菌是人皮肤上的细菌居民,也是抗生素抗性感染的主要原因(Lowy,1998; National Nosocomial Infection Surveillance,2004; Otto,2009) 。许多葡萄球菌具有III型A CRISPR-Cas系统(Marraffini和Sontheimer,2008; Cao等人,2016),已被证明可预防质粒转移并防止病毒性捕食者(Goldberg这些生物体中,等等,2014; Hatoum-Aslan等人,2014; Samai等人,2015)。因此,在天然葡萄球菌背景中获得对这些系统的机械理解可以导致对影响这些病原体的进化和存活的因素的重要见解。 III-A型CRISPR-Cas系统编码称为Cas10-Csm的五亚单位效应复合物(Hatoum-Aslan等人,2013)。在这里,我们描述了一种用于表达和纯化Cas10-Csm的方法。表皮样背景或异源性S。金黄色葡萄球菌背景。该方法由两步纯化方案组成,包括Ni 2 + - ...

VAMP8-3xHA Uptake Assay in HeLa Cells
Author:
Date:
2016-02-20
[Abstract]  Transmembrane proteins are rarely exclusively localized to a specific vesicle or an organelle. Most transmembrane proteins undergo complicated trafficking routes. Thus, transmembrane proteins are under constant flux, and at steady state, found on a variety of vesicles or organelles. This characteristic makes the study of their trafficking routes complex, since at any given moment, different molecules are often being trafficked in opposing directions. Pulse-chase experiments can temporally track a specific pool of a transmembrane protein of interest, allowing for the kinetic description of its ... [摘要]  跨膜蛋白很少专门定位于特定的囊泡或细胞器。大多数跨膜蛋白经历复杂的运输路线。因此,跨膜蛋白在恒定通量下,并在稳定状态,发现在各种囊泡或细胞器。这个特征使得他们的贩运路线的研究复杂,因为在任何给定时刻,不同的分子通常在相反的方向上被贩运。脉冲追踪实验可以暂时跟踪感兴趣的跨膜蛋白的特定池,允许其运输路线的动力学描述。这种类型的技术已广泛用于跟踪大量的质膜定位蛋白质(Diril等人,2006; Jean等人,2010)。在这里,我们描述了一种方法,允许研究VAMP8贩运从质膜到内溶酶体隔室。该方法用于描述 MTMR13 和 RAB21 在调节VAMP8向内溶酶体的运输中的作用(Jean等人,,2015)。

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